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Postbuckling of Reissner--Mindlin plates under biaxial compression and lateral pressure and resting on elastic foundations

机译:Reissner-Mindlin板在双轴压缩和侧向压力下的后屈曲并置于弹性基础上

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Using the first-order shear deformation plate theory and including plate-foundation interaction, a postbuckling analysis is presented for a simply supported, rectangular Reissner--Mindlin plate subjected to biaxial compression combined with lateral pressure and resting on a two-parameter (Pasternak--type) elastic foundation. The lateral pressure is first converted into an initial deflection and the initial geometrical imperfection of the plate is also taken into account. A perturbation technique is presented for the determination of buckling loads and postbuckling equilibrium paths. A computer program has been developed and a number of examples are solved to illustrate their application to the performance of perfect and imperfect, initial lateral pressurized moderately thick plates subjected to biaxial compression and resting on two-parameter elastic foundations from which results for winkler elastic foundations are obtained as a limiting case. The influence played by a number of effects, among them foundation stiffness, the plate aspect ratio, the biaxial load ratio, transverse shear deformation and initial lateral pressure are studied.
机译:使用一阶剪切变形板理论并包括板-基础相互作用,对简单支撑的矩形Reissner-Mindlin板进行双轴压缩并结合侧向压力并置于两参数(Pasternak-型)弹性基础。首先将侧向压力转换为初始挠度,并且还要考虑板的初始几何缺陷。提出了一种摄动技术,用于确定屈曲载荷和屈曲后的平衡路径。已经开发了一个计算机程序,并解决了许多示例,以说明它们在完美和不完美的性能上的应用,这些初始中等压力的中厚板经过双轴压缩并置于两参数弹性地基上,由此得出温克勒弹性地基作为极限情况而获得。研究了多种效应的影响,其中包括基础刚度,板高宽比,双轴载荷比,横向剪切变形和初始侧压力。

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